Biocrust contribution to soil CO2 flux in desert shrubland ecosystem of northwest Mexico

IF 1.9 4区 农林科学 Q3 ENVIRONMENTAL SCIENCES
Fernando Ayala-Niño, Yolanda Maya-Delgado, E. Troyo-Diéguez, P. P. Garcillán
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引用次数: 1

Abstract

Abstract Soil respiration is a critical ecological process and is a hierarchical component of ecosystem respiration that regulates the global carbon cycle. But there is scarce knowledge on respiration dynamics in water-stressed ecosystems and the influence of biocrusts. Soil respiration-values varied from 0.099 to 0.828 µmol s−1 m−2 after extraordinary rains; after this period, recorded values were null or negative at the most (0.000 to −0.055 µmol s−1 m−2). Shrubland soil with and without biocrusts showed the highest net CO2 exchange values and in disturbed soil with and without biocrusts (0.067; 0.059; 0.048, and 0.023 µmol s−1 m−2). The results showed that shrubland soil with BSC absorbed more CO2 than the rest of the experimental variants. Accordingly, the observed low precipitation combined with high temperatures and evapotranspiration could not activate the BSC respiration process. Such an event seemed to occur under specific temperature and moisture conditions, anyhow related to extraordinary rain events to emit CO2 to the atmosphere. Reports of negative soil respiration values in drylands are very scarce, so we discuss the possible processes that could cause this phenomenon for our study area.
墨西哥西北部荒漠灌丛生态系统生物结皮对土壤CO2通量的贡献
土壤呼吸是一个重要的生态过程,是调节全球碳循环的生态系统呼吸的一个层次组成部分。但是对缺水生态系统的呼吸动力学和生物结壳的影响还缺乏认识。异常降雨后土壤呼吸值变化范围为0.099 ~ 0.828µmol s−1 m−2;在此之后,记录值最多为零或负值(0.000至−0.055µmol s−1 m−2)。有无生物结皮的灌丛土壤和有无生物结皮的扰动土壤的CO2净交换值最高(0.067;0.059;0.048和0.023µmol s−1 m−2)。结果表明,添加BSC的灌丛土壤吸收的CO2量高于其他试验型土壤。因此,观测到的低降水、高温和蒸散不能激活BSC呼吸过程。这样的事件似乎发生在特定的温度和湿度条件下,无论如何都与向大气中排放二氧化碳的异常降雨事件有关。关于旱地负土壤呼吸值的报告非常少,因此我们讨论了可能导致我们研究区域出现这种现象的可能过程。
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来源期刊
Arid Land Research and Management
Arid Land Research and Management 环境科学-环境科学
CiteScore
3.80
自引率
7.10%
发文量
23
审稿时长
9 months
期刊介绍: Arid Land Research and Management, a cooperating journal of the International Union of Soil Sciences , is a common outlet and a valuable source of information for fundamental and applied research on soils affected by aridity. This journal covers land ecology, including flora and fauna, as well as soil chemistry, biology, physics, and other edaphic aspects. The journal emphasizes recovery of degraded lands and practical, appropriate uses of soils. Reports of biotechnological applications to land use and recovery are included. Full papers and short notes, as well as review articles and book and meeting reviews are published.
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